User:Andrew K Farag/Notebook/CHEM-581/2014/10/22: Difference between revisions

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|style="background-color: #EEE"|[[Image:BDLlogo_notext_lr.png|128px]]<span style="font-size:22px;"> Biomaterials Design Lab</span>
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|style="background-color: #F2F2F2" align="center"|[[File:Report.png|frameless|link={{#sub:{{FULLPAGENAME}}|0|-11}}]][[{{#sub:{{FULLPAGENAME}}|0|-11}}|Main project page]]<br />{{#if:{{#lnpreventry:{{FULLPAGENAME}}}}|[[File:Resultset_previous.png|frameless|link={{#lnpreventry:{{FULLPAGENAME}}}}]][[{{#lnpreventry:{{FULLPAGENAME}}}}{{!}}Previous entry]]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;}}{{#if:{{#lnnextentry:{{FULLPAGENAME}}}}|[[{{#lnnextentry:{{FULLPAGENAME}}}}{{!}}Next entry]][[File:Resultset_next.png|frameless|link={{#lnnextentry:{{FULLPAGENAME}}}}]]}}
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==Description==
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==Objectives==
#Diffusion Data Analysis
#Diffusion Data Analysis
##Procedure taken from Film-pore diffusion modeling for sorption of azo dye to exfoliated graphitic nanoplatelets by T Maiyalagan and S Karthikeyan
#Finalize films first synthesized last lab section using this [[User:Andrew K Farag/Notebook/CHEM-581/2014/08/29|procedure]].
#BPA with time laps
#Figure out volumes of films
##using a 10 mL volumetric flask and 200 microliter pipette
#Grind and store exchange clays

Latest revision as of 00:27, 27 September 2017

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Description

  1. Diffusion Data Analysis
    1. Procedure taken from Film-pore diffusion modeling for sorption of azo dye to exfoliated graphitic nanoplatelets by T Maiyalagan and S Karthikeyan
  2. Finalize films first synthesized last lab section using this procedure.
  3. BPA with time laps
  4. Figure out volumes of films
    1. using a 10 mL volumetric flask and 200 microliter pipette
  5. Grind and store exchange clays